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Biomedical subjects

J Banerjee

Publications and source records attributed to J Banerjee.

12 recordsLinked to original sources

Mitochondrial DNA control region sequence polymorphism in four indigenous tribes of Chotanagpur plateau, India.

The analysis of genetic variation, in the nucleotide sequences of mitochondrial DNA, provides unique information in tracing of maternal lineage, determination of population diversity, pharmacogenomics and human identification. This study characterizes the HVR-I and II sequence polymorphism in 80 tribal individuals, belonging to the Austro-Asiatic linguistic family of Chotanagpur plateau, India. A total of 115 polymorphic sites were observed in the sequenced regions and 77 unique haplotypes could be identified.

DNA Fingerprinting↗

Thyroid hormone stimulates progesterone release from human luteal cells by generating a proteinaceous factor.

Blood samples collected from 29 women (aged between 19 and 35 years) during the luteal phase of the menstrual cycle (between days 18 and 23 of the cycle) showed that deficiency in thyroid hormone level is related to a decrease in progesterone (P4) secretion. To observe the effect of thyroid hormone on human ovarian luteal cells, 3,5,3'-triiodothyronine (T3; 125 ng/ml) was added to luteal cells in vitro. T3 significantly stimulated progesterone release (P < 0.01) from luteal cells and this could be blocked by cycloheximide, indicating a protein mediator for the T3 effect. The T3 stimulatory effect was inhibited by anti-T3 antibody suggesting specificity of T3 action. Addition of T3 caused a more than threefold increase in cellular protein synthesis which was inhibited by cycloheximide. Preparation of partially purified thyroid hormone-induced factor (TIF) (from peak II of Sephadex G 100 chromatography of T3-incubated cells), and its addition to luteal cell incubations caused a significant increase in P4 release (P < 0.05). Incubation with trypsin or treatment with heat destroyed the stimulatory effect of TIF on P4 release, indicating the proteinaceous nature of TIF. Purified thyroid hormone-induced protein. (TIP) from rat granulosa cells and fish ovarian follicles greatly stimulated P4 release from human luteal cells. These results suggest that T3 stimulation of P4 release from human luteal cells is not direct, but is mediated through a putative protein factor, which appears to be a protein conserved through evolution as far as its biological activity is concerned.

Adult↗

Prediction of malnutrition by the ratio of the head circumference to the chest circumference.

This study was carried out in West Bengal, amongst 127 rural children aged 1-5 years. It was found that the ratio of the head circumference to the chest circumference (H:C ratio) was valuable in predicting malnutrition. An increase in the ratio occurred 2-3 months before a drop in weight was noted; a decrease in the ratio was followed 2-3 months later by a gain in weight. Hence, it is felt that this method can be used in field work to forestall malnutrition.

Child Development↗

Human chorionic gonadotropin binding sites in the human endometrium.

The existence of high-affinity and low-capacity specific binding sites for luteinizing hormone (LH)/human chorionic gonadotropin (hCG) has been reported in porcine, rabbit and rat uteri. We have identified hCG binding sites in the human endometrium collected from 35-42-year-old ovulatory and anovulatory women. The binding characteristics of hCG to endometrial tissue preparations from ovulatory and anovulatory women showed saturability with high affinity and low capacity. Scatchard plot analysis showed the dissociation constant of specific binding sites in the ovulatory women to be 3.5 x 10(-10) mol/l and in anovulatory women to be 3.1 x 10(-10) mol/l. The maximum binding capacity varied considerably between ovulatory (3.85 nmol/kg protein) and anovulatory (6.12 nmol/kg protein) endometrium. Among the divalent metal ions tested (Zn2+, Mg2+, Mn2+, Ca(2+)--4 mol/l), Zn2+ effected a remarkable increase in [125I]hCG binding to the endometrium (p < 0.005) whereas Mn2+ showed a marginal increase and other metal ions did not have any effect. Data obtained with human endometrium indicate an influence of the functional state of the ovary on [125I]hCG binding to endometrium.

Adult↗

Inhibition of human fetal brain acetylcholinesterase: marker effect of neurotoxicity.

Human fetal brains were obtained after medical termination of pregnancy at 8-10 wk from informed patients. A definite regionalization of AChE was found in the brain of the fetus, with cerebellum recording the highest and cerebral hemisphere the lowest activity. Optimum conditions for the cerebellar AChE activity were determined with respect to molarity of the buffer, pH, temperature, and concentrations of substrate (acetylthiocholine iodide), activators (NaCl, MgCl2), and thiol indicator (dithiobisnitrobenzoic acid). In vitro inhibition of cerebellar AChE with two commercial pesticides, Metacid-50 (O,O-dimethyl p-nitrophenyl phosphorothioate) and carbaryl (N-methyl naphthyl-1-carbamate), were compared with pure anticholinesterase agents, diisopropylfluorophosphate (DFP) and physostigmine (eserine). In general, organophosphates are more neurotoxic than carbamate compounds, as evidenced by higher degree of AChE inhibition by DFP and Metacid-50 as compared to eserine and carbaryl. Assays were also done with psychotropic drugs by employing the procedure of in vitro AChE inhibition kinetics, and it was found that psychotropic drugs are less potent than organophosphate and carbamate compounds. Results indicate that pure and commercial organophosphates and carbamates and psychotropic drugs are all able to significantly alter the AChE activity. Thus exposure of the mother to these environmental toxicants may adversely affect the fetal neural functions.

Acetylcholinesterase↗

Phosphoinositides from human foetal brain during development.

An attempt has been made in the present study to look for the activity of the enzymes which catalyse the breakdown of phosphorylated metabolites both in acidic and alkaline pH from human foetal brain, in different gestational ages during development in 18 foetal samples. It was revealed that phosphatases were distributed throughout the brain and were operative from the onset of development. There was a tendency of increment of specific activity of enzymes with respect to the advancement of gestational period. This observation should be accounted as a prerequisite criteria for understanding phosphate meatabolism in human foetal organs primarily associated with glycolytic and gluconeogenic pathways.

Brain↗

Study of foetomaternal haemorrhage in relation to mode of delivery.

A study on 100 pregnant women regarding foetomaternal haemorrhage (FMH) in relation to mode of delivery with Kleihauer acid-elution technique revealed that FMH was affected by mode of delivery. Incidence of FMH was nil in normal spontaneous delivery without syntocinon drip but the incidence of FMH in normal delivery preceded by syntocinon drip was 19.05%, in forceps delivery 40%, in lower uterine caesarean section 50% and in normal delivery followed by manual removal of placenta 100%. The incidence of FMH was more in postpartum period (16%) than that in antenatal period (8%).

Delivery, Obstetric↗

Thyroid hormone binds to human corpus luteum.

A high affinity, low capacity 3,5,3'-triiodo-L-thyronine (T3) specific binding was detected in the nuclei preparation from human corpus luteal nuclei by using an in vitro thyroid hormone binding assay. The bound hormone was efficiently separated from free hormone by the use of 40% polyethylene glycol. Under standardized assay conditions of pH 8.6 at 37 degrees C and a 2-h incubation time, the binding in the corpus luteal nuclei was saturable with Kd 4.94 x 10(-10) M with low maximum binding capacity (1.70 p mol/mg DNA). Competitive binding studies with hormone analogues indicated that T3 binding to corpus luteal nuclei is hormone-specific. Findings indicated a direct effect of thyroid hormone on the human corpus luteum.

Binding, Competitive↗

EMS-induced reversion studies in the white locus of Drosophila melanogaster.

5 white-locus mutants of Drosophila melanogaster, respresenting 5 different sub-sites, were treated with EMS and tested for reversion to wild-type. 4 of them were genuine mutants and one was not. Moreover, the ability of the 4 mutants to revert to wild-type differed from one another which therefore reflects a qualitatively distinct alteration in the genetic material delimited by each mutant.

Animals↗